
The Indoor Climate and Energy specialisation is part of the Bachelor of Engineering (Diplomingeniør) program in Building and Construction at Aalborg University. This 3.5-year program focuses on optimising indoor climate and energy consumption in buildings to enhance environmental sustainability. You will gain expertise in viewing buildings from a climate-technical perspective, learning how to improve building installations and ensure a good indoor climate while minimising energy use. This specialisation is chosen at the start of your third year, giving you the first two years of the broader Building and Construction program to explore your interests before committing to this area. The curriculum integrates theoretical knowledge with practical experience, preparing you for a career in the construction and energy sectors.
The specialisation in Indoor Climate and Energy formally begins in the 5th semester (the third year of study). The first two years (semesters 1-4) cover general subjects within the Building and Construction engineering program. The curriculum below outlines the content for the specialisation period.
All tuition and living cost information must be verified directly with Aalborg University's admissions or international office.
The program is a 3.5-year Bachelor of Engineering (Diplomingeniør) degree, with the specialisation chosen in the third year.
The language of instruction for the Diplomingeniør in Building and Construction program, including the Indoor Climate and Energy specialisation, is Danish.
Tuition fees for non-EU/EEA students typically apply, but specific fee information for this specialisation is not provided. Please verify directly with Aalborg University's admissions or international office.
The program integrates theoretical knowledge with practical experience, including a company internship in the 6th semester and a final project in the 7th semester.
Graduates will be equipped with skills for roles in the building and construction industry, focusing on energy efficiency and indoor climate optimisation.